博碩士論文 973202081 詳細資訊




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姓名 張紋綺(Wen-chi Chang)  查詢紙本館藏   畢業系所 土木工程學系
論文名稱 整合式光學衛星影像區域平差
(Integrated Adjustment of Blocks for Optical Satellite Images)
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摘要(中) 衛星影像幾何處理可分為嚴密幾何模式和有理函數模式。嚴密幾何模式又可細分為光束法及直接地理對位,其中的直接地理對位是以星曆資料為基礎,需較佳的起始值,所以對地面控制點的需求較少。而有理函數模式是使用兩個多項式的比值來建立物空間與像空間的轉換關係,標準化的數學形式較嚴密幾何模式簡易。實際的應用上,有些衛星公司僅提供有理函數轉換係數,有些衛星公司僅提供星曆資料。當兩類的衛星影像要進行整體平差時,則需考量異質模式間之整體平差,因此嚴密幾何模式與有理函數模式有其整合之必要性。
本研究結合直接地理對位及有理函數模式進行整體平差。研究重點為兩種異質數學模式間之整合處理。主要工作項目包括直接地理對位及有理函數模式之建立,配合數值地形模型進行高程控制,並以最小二乘配置法補償局部系統誤差。實驗內容將分別測試本文提出之異質整合模式與其它同質性整體平差之方法之比較、分析連結點數的增加對於成果之影響,與針對不同空間解析度之影像進行整合處理與分析。精度評估分為兩大部份,分別為地面定位坐標誤差和影像間之相對偏移量。實驗成果顯示,最小二乘配置可有效改善影像間幾何一致性,且獨立平差配合最小二乘配置成果與聯合平差配合最小二乘配置成果相近。
摘要(英) The geometric modeling may be divided into two categories, namely, rigorous sensor model (RSM) and rational function model (RFM). The former one contains Bundle Adjustment and Direct Georeferencing. Actually, some satellite companies provide the Rational Polynomial Coefficients (RPC) instead of the ephemeris data. Some others are on the contrary. The block adjustment of the heterogeneous models between RSM and RFM should be integrated when the two types of images are employed.
This paper combines Direct Georeferencing and RFM for multi-sensor block adjustment. Two heterogeneous models using Digital Elevation Model (DEM) as elevation control are integrated. The major works of the proposed schemes include (1) building up Direct Georeferencing mathematics, (2) setting up RFM, and (3) compensating the local systematic errors by least squares collocation. The experiments test the different geometric models, different numbers of tie points, and the integration of multi-resolution images. The validation includes two parts: absolute accuracy and relative discrepancy. Experimental results indicate that least squares collocation can improve the relative discrepancy. It is also demonstrated that the result of single adjustment with least squares collocation is similar to block adjustment with least squares collocation.
關鍵字(中) ★ 最小二乘配置法
★ 區域平差
★ 有理函數模式
★ 直接地理對位
關鍵字(英) ★ Direct Georeferencing
★ Rational Function Model
★ Least Squares Collocation
★ Block Adjustment
論文目次 摘要 I
ABSTRACT II
誌謝 III
目錄 IV
圖目錄 VII
表目錄 X
第一章 前言 1
1.1 研究動機與目的 1
1.2 研究方法及內容 5
第二章 幾何模式 8
2.1 坐標系統 9
2.2獨立平差 11
2.2.1直接地理對位 11
2.2.2 有理函數模式 16
2.3 聯合平差 23
2.3.1直接地理對位觀測方程式 24
2.3.2有理函數模式觀測方程式 25
2.3.3地面坐標虛擬觀測方程式 26
2.3.4 權的釐定 28
2.3.5最小二乘平差模式 29
2.4 最小二乘配置 31
2.5 精度評估 33
第三章 實驗成果與分析 34
3.1 實驗資料介紹 34
3.1.1 測試例一 34
3.1.2 測試例二 37
3.1.3 測試例三 40
3.2 實驗內容 44
3.2.1 測試例一 45
3.2.2 測試例二 46
3.2.3 測試例三 46
3.3 實驗成果與分析 47
3.3.1 測試例一 47
3.3.2 測試例二 51
3.3.3 測試例三 60
3.3.4 實驗成果總結 69
第四章 結論與建議 70
參考文獻 72
參考文獻 仝宜中,2005,“以DEM為高程控制之弱交會幾何衛星影像區域平差”,碩士論文,國立中央大學土木工程研究所。
張智安,2002,“EROS A衛星影像幾何改正之研究”,碩士論文,國立中央大學土木工程研究所。
張智安,陳良健,2007。有理函數模式於高解析衛星影像幾何改正之應用,航測及遙測學刊,第十二卷,第三期,第257-272頁。
劉建良,2004,“多航帶推掃式衛星方位平差及影像正射化”,碩士論文,國立中央大學土木工程研究所。
巫婉瑜,2008,“弱交會幾何衛星影像之有理函數模型區域平差”,碩士論文,國立中央大學土木工程研究所。
Bouillon, A., M. Bernard, P. Gigord, A. Orsoni, V. Rudowski, and A. Baudoin, 2006. SPOT 5 HRS geometric performances: Using block adjustment as a key issue to improve quality of DEM generation, ISPRS Journal of Photogrammetry & Remote Sensing, 60:177-194.
Chen, L.C., and L.Y. Chang, 1998. Three Dimensional Positioning Using SPOT Stereostrips with Sparse Control, Journal of Surveying Engineering, 124(2):63-72.
Chen, L.C., and L.H. Lee, 1993. Rigorous Generation of Digital Orthophotos from SPOT Images, Photogrammetric Engineering & Remote Sensing, 59(5):655-661.
Chen, L.C., T.A. Teo, and C.L. Liu, 2006. The Geometrical Comparisons of RSM and RFM for FORMOSAT-2 Satellite Images, Photogrammetric Engineering & Remote Sensing, 69(1):59-68.
Dowman, I.J., and P. Michalis, 2003. Generic rigorous model for along track stereo satellite sensors, Atti del seminario ISPRS & EARSel: High resolution mapping from space, University of Hannover, 6-8 ottobre 2003.
Fraser, C.S., G. Dial, and J. Grodecki, 2006. Sensor Orientation via RPCs, ISPRS Journal of Photogrammetry & Remote Sensing, 60(3):182-194.
Ghilani, C.D., and P.R. Wolf, 2008. ELEMENTARY SURVEYING An Introduction to Geomatics, 12th Edition, Prentice Hall, New Jersey, pp. 331.
Grodecki, J., and G. Dial, 2003. Block adjustment of high-resolution satellite image described by rational funtion, Photogrammetric Engineering & Remote Sensing, 69(1):59-68.
Habib, A., S.W. Shin, K. Kim, C. Kim, K.I. Bang, E.M. Kim, and D.C. Lee, 2007. Comprehensive Analysis of Sensor Modeling Alternatives for High Resolution Imaging Satellites, Photogrammetric Engineering & Remote Sensing, 73(11):1241-1251.
Mayumi, N., C.S. Fraser, N. Takayuki, S. Takahiro, and O. Shoichi, 2004. Accuracy assessment of QuickBird stereo imagery, The Photogrammetric Record, 19(106):128-137.
Mikhail, E.M., and J.S. Bethel, 2001. Introduction to modern photogrammetry, John wiley and Sons, New York, pp.446-454.
OGC, 2000. The Compendium of Controlled Extensions (CE) for the National Imagery Transmission Format (NITF), STDI- 0002, Version 2.1, November 16.
Poli, D., L. Zhang, and A. Gruen, 2004. Orientation of satellite and airborne imagery from multi-line pushbroom sensors with a rigorous sensor model. International Archives of Photogrammetry and Remote Sensing, 35(B1): 130-135.
Robertson, B.C., 2003. Rigorous geometric modeling and correction of QuickBird imagery. International Geoscience and Remote Sensing Symposium, 21-25 July, Toulouse, France, on CD-ROM.
Seeber, G., 2003. Satellite Geodesy, 2nd Edition, New York, , pp. 29.
Sohn, H.G., C.H. Park, and H. Chang, 2005. Rational Function Model-Based Image Matching for Digital Elevation Models, The Photogrametric Record, 20(112):366-383.
Tao, C.V., and Y. Hu, 2001. A Comprehensive Study of the Rational Function Model for Photogrammetric Processing, Photogrammetric Engineering & Remote Sensing, 67(12):1347-1357.
Tao, C.V., and Y. Hu, 2002. 3D reconstruction methods based on the rational function model. Photogrammetric Engineering and Remote Sensing, 68(7): 705-714.
Toutin, T., 2003. Block Bundle Adjustment of IKONOS In-Track Image, International Journal of Remote Sensing, 24(4):851-857.
Toutin, T., 2006. Comparison of 3D Physical and Empirical Models for Generating DSMs from Stereo HR Images, Photogrammetric Engineering & Remote Sensing, 72(5):597-604.
Weser, T., F. Rottensteiner, J. Willneff, J. Poon, and C.S. Fraser, 2008. Development and testing of a generic sensor model for pushbroom satellite imagery, The Photogrammetric Record, 23(123):255-274.
Yastikli, N., and K. Jacobsen, 2005. Influence of system calibration on direct sensor orientation. Photogrammetric Engineering and Remote Sensing, 71(5):629-633.
指導教授 陳良健(Liang-chien Chen) 審核日期 2009-7-20
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